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Plasmon-Induced Trap State Emission from Single Quantum Dots
https://www.np.phy.cam.ac.uk/files/documents/PRL21_QDinNPoM.pdf23 Aug 2021: to be distinguished. [24] The large surface:volume ratio ofQDs can allow dense surface traps to emit as brightly as theband-edge excitons [22,25,26].While trap emission was initially ... Am.Chem. Soc. 134, 3804 (2012). [24] L. Biadala, B. Siebers, Y. -
Accessing Plasmonic Hotspots Using Nanoparticle-on-Foil Constructs
https://www.np.phy.cam.ac.uk/files/acsphotonics21_npof_d.pdf23 Aug 2021: While the thinnest metalsheets have reached t 3 nm,2123 it has been possible usingTMD or molecular spacers to routinely achieve d < 1 nm gaps.24. ... J. Plasmonics in Atomically Thin Crystalline SilverFilms. ACS Nano 2019, 13 (7), 77717779.(24) Dias, E. -
Mechanistic study of an immobilized molecular electrocatalyst by in…
https://www.np.phy.cam.ac.uk/files/documents/NatCatalysis21_bisNiS.pdf23 Aug 2021: Electrode designs such as confined environments22 and layered geometries23,24 advance catalysis by enhancing nanoscale mass transport and elec-trode dynamics compared to conventional electrodes. ... ACS Sustain. Chem. Eng. 5, 4771–4777 (2017). 24. Yang, -
Interfering Plasmons in Coupled Nanoresonators to Boost Light…
https://www.np.phy.cam.ac.uk/files/documents/NanoLett21_NPoR.pdf23 Aug 2021: Nat. Commun. 2019, 10, 4476.(24) Rodríguez-Cantó, P. J.; Martínez-Marco, M.; Rodríguez-Fortuño, F. -
Science Journals — AAAS
https://www.np.phy.cam.ac.uk/files/documents/ScienceAdv21_singlemoleculepH.pdf23 Aug 2021: It can therefore serve as a powerful. technique for in situ in operando tracking of interfacial chemical reactions (24–27). ... Nat. Nanotechnol. 15, 207–211 (2020). 24. E. A. Sprague-Klein, B. Negru, L. -
Plasmon-Induced Trap State Emission from Single Quantum Dots
https://www.np.phy.cam.ac.uk/sites/www.np.phy.cam.ac.uk/files/documents/PRL21_QDinNPoM.pdf23 Aug 2021: to be distinguished. [24] The large surface:volume ratio ofQDs can allow dense surface traps to emit as brightly as theband-edge excitons [22,25,26].While trap emission was initially ... Am.Chem. Soc. 134, 3804 (2012). [24] L. Biadala, B. Siebers, Y. -
Mechanistic study of an immobilized molecular electrocatalyst by in…
https://www.np.phy.cam.ac.uk/sites/www.np.phy.cam.ac.uk/files/documents/NatCatalysis21_bisNiS.pdf23 Aug 2021: Electrode designs such as confined environments22 and layered geometries23,24 advance catalysis by enhancing nanoscale mass transport and elec-trode dynamics compared to conventional electrodes. ... ACS Sustain. Chem. Eng. 5, 4771–4777 (2017). 24. Yang, -
Interfering Plasmons in Coupled Nanoresonators to Boost Light…
https://www.np.phy.cam.ac.uk/sites/www.np.phy.cam.ac.uk/files/documents/NanoLett21_NPoR.pdf23 Aug 2021: Nat. Commun. 2019, 10, 4476.(24) Rodríguez-Cantó, P. J.; Martínez-Marco, M.; Rodríguez-Fortuño, F. -
Science Journals — AAAS
https://www.np.phy.cam.ac.uk/sites/www.np.phy.cam.ac.uk/files/documents/ScienceAdv21_singlemoleculepH.pdf23 Aug 2021: It can therefore serve as a powerful. technique for in situ in operando tracking of interfacial chemical reactions (24–27). ... Nat. Nanotechnol. 15, 207–211 (2020). 24. E. A. Sprague-Klein, B. Negru, L. -
Interfering Plasmons in Coupled Nanoresonators to Boost Light…
https://www.np.phy.cam.ac.uk/sites/www.np.phy.cam.ac.uk/files/documents/copy_of_NanoLett21_NPoR.pdf23 Aug 2021: Nat. Commun. 2019, 10, 4476.(24) Rodríguez-Cantó, P. J.; Martínez-Marco, M.; Rodríguez-Fortuño, F.
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